use crate::model::common::{ForEachFeatureMut, IterFeatures};
use crate::model::core::refs::AbstractFeatureKindRef;
use crate::model::core::refs::AbstractFeatureKindRefMut;
use crate::model::core::{
AbstractOccupiedSpace, AsAbstractOccupiedSpace, AsAbstractOccupiedSpaceMut,
};
use crate::model::generics::values::{
GenericOccupiedSpaceClassValue, GenericOccupiedSpaceFunctionValue,
GenericOccupiedSpaceUsageValue,
};
use egml::model::base::Id;
use egml::model::common::{ApplyTransform, ComputeEnvelope};
use egml::model::geometry::Envelope;
use nalgebra::{Isometry3, Rotation3, Scale3, Transform3, Vector3};
#[derive(Debug, Clone, PartialEq)]
pub struct GenericOccupiedSpace {
pub(crate) abstract_occupied_space: AbstractOccupiedSpace,
class: Option<GenericOccupiedSpaceClassValue>,
functions: Vec<GenericOccupiedSpaceFunctionValue>,
usages: Vec<GenericOccupiedSpaceUsageValue>,
}
impl GenericOccupiedSpace {
pub fn new(id: Id) -> Self {
Self::from_abstract_occupied_space(AbstractOccupiedSpace::new(id))
}
pub fn from_abstract_occupied_space(abstract_occupied_space: AbstractOccupiedSpace) -> Self {
Self {
abstract_occupied_space,
class: None,
functions: Vec::new(),
usages: Vec::new(),
}
}
pub fn class(&self) -> Option<&GenericOccupiedSpaceClassValue> {
self.class.as_ref()
}
pub fn set_class(&mut self, class: GenericOccupiedSpaceClassValue) {
self.class = Some(class);
}
pub fn set_class_opt(&mut self, class: Option<GenericOccupiedSpaceClassValue>) {
self.class = class;
}
pub fn clear_class(&mut self) {
self.class = None;
}
pub fn functions(&self) -> &[GenericOccupiedSpaceFunctionValue] {
&self.functions
}
pub fn functions_mut(&mut self) -> &mut [GenericOccupiedSpaceFunctionValue] {
&mut self.functions
}
pub fn set_functions(&mut self, functions: Vec<GenericOccupiedSpaceFunctionValue>) {
self.functions = functions;
}
pub fn push_function(&mut self, function: GenericOccupiedSpaceFunctionValue) {
self.functions.push(function);
}
pub fn extend_functions(
&mut self,
functions: impl IntoIterator<Item = GenericOccupiedSpaceFunctionValue>,
) {
self.functions.extend(functions);
}
pub fn usages(&self) -> &[GenericOccupiedSpaceUsageValue] {
&self.usages
}
pub fn usages_mut(&mut self) -> &mut [GenericOccupiedSpaceUsageValue] {
&mut self.usages
}
pub fn set_usages(&mut self, usages: Vec<GenericOccupiedSpaceUsageValue>) {
self.usages = usages;
}
pub fn push_usage(&mut self, usage: GenericOccupiedSpaceUsageValue) {
self.usages.push(usage);
}
pub fn extend_usages(
&mut self,
usages: impl IntoIterator<Item = GenericOccupiedSpaceUsageValue>,
) {
self.usages.extend(usages);
}
}
impl AsAbstractOccupiedSpace for GenericOccupiedSpace {
fn abstract_occupied_space(&self) -> &AbstractOccupiedSpace {
&self.abstract_occupied_space
}
}
impl AsAbstractOccupiedSpaceMut for GenericOccupiedSpace {
fn abstract_occupied_space_mut(&mut self) -> &mut AbstractOccupiedSpace {
&mut self.abstract_occupied_space
}
}
crate::impl_abstract_occupied_space_traits!(GenericOccupiedSpace);
crate::impl_abstract_occupied_space_mut_traits!(GenericOccupiedSpace);
crate::impl_has_feature_type!(GenericOccupiedSpace, GenericOccupiedSpace);
impl IterFeatures for GenericOccupiedSpace {
fn iter_features(&self) -> Box<dyn Iterator<Item = AbstractFeatureKindRef<'_>> + '_> {
Box::new(std::iter::once(self.into()).chain(self.abstract_occupied_space.iter_features()))
}
}
impl ForEachFeatureMut for GenericOccupiedSpace {
fn for_each_feature_mut<F: FnMut(AbstractFeatureKindRefMut<'_>)>(&mut self, f: &mut F) {
f((&mut *self).into());
self.abstract_occupied_space.for_each_feature_mut(f);
}
}
impl ComputeEnvelope for GenericOccupiedSpace {
fn compute_envelope(&self) -> Option<Envelope> {
self.abstract_occupied_space.compute_envelope()
}
}
impl ApplyTransform for GenericOccupiedSpace {
fn apply_transform(&mut self, m: Transform3<f64>) {
self.abstract_occupied_space.apply_transform(m);
}
fn apply_isometry(&mut self, isometry: Isometry3<f64>) {
self.abstract_occupied_space.apply_isometry(isometry);
}
fn apply_translation(&mut self, vector: Vector3<f64>) {
self.abstract_occupied_space.apply_translation(vector);
}
fn apply_rotation(&mut self, rotation: Rotation3<f64>) {
self.abstract_occupied_space.apply_rotation(rotation);
}
fn apply_scale(&mut self, scale: Scale3<f64>) {
self.abstract_occupied_space.apply_scale(scale);
}
}